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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Combined on-line transmission FTIR measurements and BTEM analysis for the kinetic study of a consecutive reaction in aqueous-organic phase medium
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Combined on-line transmission FTIR measurements and BTEM analysis for the kinetic study of a consecutive reaction in aqueous-organic phase medium

机译:结合在线传输FTIR测量和BTEM分析进行水-有机相介质中连续反应的动力学研究

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摘要

Combined on-line transmission FTIR spectroscopy and band-target entropy minimization (BTEM) analysis were employed in order to monitor and analyze the kinetics of the alkaline hydrolysis reaction of diethyl phthalate (DEP) in aqueous-ethanol solvent mixture. This reaction is irreversible and involves two consecutive steps with the formation of the observable mono-ion intermediate species. The pure component mid-FTIR spectra of the reactive species involved in this reaction, namely DEP, mono-ion intermediate and di-ion product were successfully reconstructed using BTEM. Their corresponding concentrations were also calculated and subsequently employed to derive the kinetic rate parameters. The effect of temperature and the solvent mixture compositions on these two consecutive reaction steps were also discussed. The temperature variation study showed that both reaction rate coefficients increased with temperature. Both rate coefficients were also affected by the solvent mixture compositions and reached minimum values at certain water-ethanol solvent composition (circa 60% (v/v)). This study shows the utility of combined on-line transmission FTIR spectroscopy and chemometric techniques for the present, rather complex, consecutive organic reaction. Moreover, the present type of approach could facilitate better understanding of a wide variety of organic reactions that are performed in aqueous and mixed aqueous-organic solvents.
机译:为了监测和分析邻苯二甲酸二乙酯(DEP)在水-乙醇溶剂混合物中的碱水解反应动力学,采用了在线透射FTIR光谱和带目标熵最小化(BTEM)分析相结合的方法。该反应是不可逆的,并且涉及形成可观察到的单离子中间物质的两个连续步骤。使用BTEM成功地重建了参与该反应的反应物种的纯组分中红外光谱,即DEP,单离子中间体和二离子产物。还计算了它们的相应浓度,随后用于推导动力学速率参数。还讨论了温度和溶剂混合物组成对这两个连续反应步骤的影响。温度变化研究表明,两个反应速率系数均随温度升高而增加。两种速率系数也受溶剂混合物组成的影响,在某些水-乙醇溶剂组成下(约为60%(v / v))达到最小值。这项研究表明,将在线透射FTIR光谱学和化学计量学技术相结合可用于目前相当复杂的连续有机反应。而且,该类型的方法可以促进更好地理解在水性和混合的水性有机溶剂中进行的多种有机反应。

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